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3
ATP storage and uptake by isolated pancreatic zymogen granules.分离的胰腺酶原颗粒的 ATP 储存和摄取。
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4
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不同亚型的离子型嘌呤能受体对小鼠腮腺细胞中 ATP 诱发的钙信号的贡献。

Distinct contributions by ionotropic purinoceptor subtypes to ATP-evoked calcium signals in mouse parotid acinar cells.

机构信息

Department of Neurosciences, University of Toledo College of Medicine, Toledo, OH, USA.

出版信息

J Physiol. 2012 Jun 1;590(11):2721-37. doi: 10.1113/jphysiol.2012.228148. Epub 2012 Mar 25.

DOI:10.1113/jphysiol.2012.228148
PMID:22451435
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3424727/
Abstract

There is emerging consensus that P2X₄ and P2X₇ ionotropic purinoceptors (P2X₄R and P2X₇R) are critical players in regulating [Ca²⁺]i dynamics and fluid secretion in the salivary gland. In contrast, details regarding their compartmentalization and selective activation, contributions to the spatiotemporal properties of intracellular signals and roles in regulating protein exocytosis and ion channel activity have remained largely undefined. To address these concerns, we profiled mouse parotid acinar cells using live-cell imaging to follow the spatial and temporal features of ATP-evoked Ca²⁺ dynamics and exocytotic activity. Selective activation of P2X7Rs revealed an apical-to-basal [Ca²⁺]i signal that initiated at the sub-luminal border and propagated with a wave speed estimated at 17.3 ± 4.3 μm s⁻¹ (n =6). The evoked Ca²⁺ spike consisted of Ca²⁺ influx and Ca²⁺-induced Ca²⁺ release from intracellular Ca²⁺ channels. In contrast, selective activation of P2X₄Rs induced a Ca²⁺ signal that initiated basally and propagated toward the lumen with a wave speed of 4.3 ± 0.2 μm s⁻¹ (n =8) that was largely independent of intracellular Ca²⁺ channel blockade. Consistent with these observations, P2X₇R expression was enriched in the sub-luminal regions of acinar cells while P2X₄R appeared localized to basal areas. In addition, we showed that P2X₄R and P2X₇R activation evokes exocytosis in parotid acinar cells. Our studies also demonstrate that the P2X₄R-mediated [Ca²⁺]i rise and subsequent protein exocytosis was enhanced by ivermectin (IVR). Thus, in addition to furthering our understanding of salivary gland physiology, this study identifies P2X₄R as a potential target for treatment of salivary hypofunction diseases.

摘要

越来越多的共识认为,P2X4 和 P2X7 离子型嘌呤能受体(P2X4R 和 P2X7R)是调节唾液腺[Ca²⁺]i 动力学和液体分泌的关键因素。相比之下,关于它们的区室化和选择性激活、对细胞内信号时空特性的贡献以及在调节蛋白胞吐和离子通道活性中的作用的细节仍未得到明确界定。为了解决这些问题,我们使用活细胞成像技术对小鼠腮腺腺泡细胞进行了分析,以跟踪 ATP 诱发的 Ca²⁺动力学和胞吐活性的空间和时间特征。选择性激活 P2X7R 显示出一种从亚腔下边界开始并以估计为 17.3 ± 4.3 μm s⁻¹(n = 6)的波速传播的顶端到基底的[Ca²⁺]i 信号。诱发的 Ca²⁺峰由 Ca²⁺内流和 Ca²⁺诱导的细胞内 Ca²⁺通道释放的 Ca²⁺组成。相比之下,选择性激活 P2X4R 诱导了一种从基底开始并以估计为 4.3 ± 0.2 μm s⁻¹(n = 8)的波速向腔传播的 Ca²⁺信号,该信号在很大程度上独立于细胞内 Ca²⁺通道阻断。与这些观察结果一致,P2X7R 的表达在腺泡细胞的亚腔下区域富集,而 P2X4R 似乎定位于基底区域。此外,我们表明 P2X4R 和 P2X7R 的激活可引发腮腺腺泡细胞的胞吐作用。我们的研究还表明,P2X4R 介导的[Ca²⁺]i 升高和随后的蛋白胞吐作用可被伊维菌素(IVR)增强。因此,除了进一步了解唾液腺生理学外,本研究还确定 P2X4R 是治疗唾液分泌功能低下疾病的潜在靶点。